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Long range dependence in network traffic and the closed loop behaviour of buffers under adaptive window control

机译:自适应窗口控制下网络流量的远程依赖性和缓冲区的闭环行为

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摘要

We consider an Internet link carrying http-like traffic, i.e., transfers of finite volume files arriving at random time instants. These file transfers are controlled by an adaptive window protocol (AWP); an example of such a protocol is TCP. We provide analysis for the auto-covariance function of the AWP-controlled traffic into the link's buffer; this traffic, in general, cannot be represented by an on-off process. The analysis establishes that, for TCP-controlled transfer of Pareto-distributed file sizes with infinite second moment, the traffic into the link buffer is long range-dependent (LRD). We also develop an analysis for obtaining the stationary distribution of the link buffer occupancy under an AWP-controlled transfer of files sampled from some distribution. For any AWP, the analysis provides us with the Laplace-Stieltjes transform (LST) of the distribution of the link buffer occupancy process in terms of the functions defining the AWP and the file size distribution. The analysis also provides a necessary and a sufficient condition for the finiteness of the mean link buffer content; these conditions again have explicit dependence on the AWP used and the file size distribution. This establishes the sensitivity of the buffer occupancy process to the file size distribution. Combining the results from the above analyses, we provide various examples in which the closed loop control of an AWP results in finite mean link buffer occupancy even though the file sizes are Pareto-distributed (with infinite second moment), and the traffic into the link buffer is long range-dependent (with Hurst parameters which would suggest an infinite mean queue occupancy under open loop analysis). We also study the effect of window reductions due to active queue management and find that window reductions lead to further lightening of the tail of buffer occupancy distribution.
机译:我们考虑一个Internet链接,它承载类似http的流量,即,在随机时刻到达的有限卷文件的传输。这些文件传输由自适应窗口协议(AWP)控制;这样的协议的一个例子是TCP。我们提供对AWP控制的流量到链路缓冲区的自动协方差功能的分析;通常,此流量无法通过开/关过程来表示。分析确定,对于TCP控制的具有无限秒矩的帕累托分布文件大小的传输,进入链接缓冲区的流量取决于远程范围(LRD)。我们还开发了一种分析方法,用于在AWP控制的文件分发中从某些分发中获取链接缓冲区占用的平稳分发。对于任何AWP,该分析根据定义AWP的功能和文件大小分布为我们提供了链接缓冲区占用过程分布的Laplace-Stieltjes变换(LST)。该分析还为平均链接缓冲区内容的有限性提供了必要和充分的条件。这些条件再次明显取决于所使用的AWP和文件大小分布。这样可以确定缓冲区占用过程对文件大小分布的敏感性。结合以上分析的结果,我们提供了许多示例,其中AWP的闭环控制即使文件大小是Pareto分布的(具有无限的第二时刻),也导致有限的平均链接缓冲区占用,并且进入链接的流量缓冲区是长距离相关的(具有Hurst参数,这暗示在开环分析下无限平均队列占用)。我们还研究了由于主动队列管理而导致的窗口减少的影响,发现窗口减少导致缓冲区占用率分布尾部的进一步减轻。

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